P-channel JFET. 2N5462 Datasheet

2N5462 JFET. Datasheet pdf. Equivalent

Part 2N5462
Description P-channel JFET
Feature p-channel JFET designed for. • • • Amplifiers • Analog Switches ABSOLUTE MAXIMUM RATINGS TA = 25°C u.
Manufacture Siliconix
Total Page 1 Pages
Datasheet
Download 2N5462 Datasheet



2N5462
p-channel JFET
designed for.
• Amplifiers
• Analog Switches
ABSOLUTE MAXIMUM RATINGS
TA = 25°C unless otherwise noted
Drain-Gate or Source-Gate Voltage
2N5460 - 2N5462 ....•.......................... 40V
2N5463 - 2N5465 ..........................••... 60V
Gate Current ................................•....10 rnA
Storage Temperature Range ........... -65°C to +200°C
Operating Temperature Range .••....... -55°C to +150°C
Lead Temperature (Soldering. 10 sec.) ........... +300°C
Power Dissipation .............................. 310 mW
Derate Above 25°C ...................... 2.8 mW/oC
.H
Siliconix
BENEFITS
• Low Cost
• Automated Insertion Package
• Low Capacitance
PIN
CONFIGURATION
TO-92
[)o~:
Plastic
~
Z
UI
o~
I
~
Z
UI
~
UI
BottomVI8W
ELECTRICAL CHARACTERISTICS (25°C unless otherwise noted)
Parameter
Min Typ
BVGSS
Gate-Source Breakdown Voltage
2N6460. 2N5461. 2N5462
2NS463. 2NS464. 2NS465
2NS460. 2NS463
40
60
0.75
VGS(off)
Gate-Source Cutoff Voltage
2NS461. 2NS464
2NS462. 2NS465
1.0
1.8
IGSSR
lOSS
VGS
gf,
go,
C'SS
Coss
NF
Gate-Reverse Current
I TA = 100'C
Zero-Gate Voltage Dram Current
Gate-Source Voltage
Forward Transadmlttance
Output Admittance
Input Capacitance
Reverse Transfer Capacitance
Common-Source NOise Figure
2NS460. 2N5461. 2N5462
2N5463. 2N5464, 2N5465
2NS460. 2N5461. 2N5462
2NS463. 2N5464. 2N5465
2NS460.2N5463
2N5461.2NS464
2N5462. 2N5465
2N5460. 2N5463
2NS461.2N5464
2NS462. 2N5465
2NS460. 2N5463
2NS461.2N5464
2NS462. 2N5465
-10
-2.0
-4.0
05
08
15
1000
1500
2000
5.0
1.0
1.0
EqUivalent Short-Circuit Input
on NOise Voltage
60
Max
6.0
7.5
9.0
5.0
50
10
1.0
-5.0
-90
-16
40
4.5
6.0
4000
5000
6000
75
7
2.0
2.5
115
Units
V
V
nA
"A
rnA
V
",mho
IIomho
pF
pF
dB
nVI
vHz
Test Conditions
IG = 10 "Adc. VOS = 0
VOS = 15 Vdc, 10 "" 1.0 /LAde
VOS = 0
VGS = 20V
VGS == 30V
VGS = 20V
VGS = 30V
VOS= -15V
VGS = 0
'0=01 mA
'0"" -0.2 rnA
'0= -04mA
VOS = -15V
VGS = OV
f= 10kHz
f"'" 100 Hz
BW"", 1 0 Hz
RG""'10MO(en only)
Siliconix
3-25





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